This application is based upon and claims a priority of Japanese Patent Application No. 2006-321158, filed Nov. 29, 2006, the contents being incorporated herein by reference.
1. Field of the Invention
The present invention relates to a motor drive apparatus, more particularly relates to a motor drive apparatus charging capacitors with energy generated at the time of motor regeneration and provided with a control apparatus for securing safety for a capacitor bank reutilized at the time of motor running.
2. Description of the Related Art
In the past, a capacitor bank was just connected to a motor drive apparatus in parallel. In particular, there was never any motor drive apparatus provided with a control apparatus for securing safety for the capacitor bank. As a prior art document in this field, Japanese Patent Publication (A) No. 2003-333891 is known.
An object of the present invention is to provide a motor drive apparatus in which the safety of the motor drive apparatus when an abnormality occurs in a capacitor bank is secured by building into the capacitor bank a circuit or function for protecting the capacitor bank and motor drive apparatus.
Another object of the present invention is to prevent electric shock even when a person mistakenly touches the capacitor bank when the capacitor bank stores a charge (energy).
According to the present invention, there is provided a drive apparatus for a motor used in an industrial machine, which motor drive apparatus comprises a converter for converting AC voltage supplied from an external power source to DC voltage, a capacitor bank connected to the output of the converter, and a control apparatus for stopping the function of the capacitor bank when detecting an abnormality in the capacitor bank.
By stopping the function of the capacitor bank when detecting an abnormality in the capacitor bank, the danger of the capacitor bank to the human body can be avoided.
The above object and features of the present invention will be more clearly understood by reading the best mode for carrying out the invention below explained with reference to the attached drawings, wherein
The capacitor bank 7 is provided with a fuse 71 connected to one of the DC links of the output of the converter 4, one or more capacitors 72 connected between the fuse 71 and the DC link, a discharge circuit 73 connected in parallel with the capacitors 72, a temperature detection device 74 for detecting the temperature inside the capacitor bank 7, and a voltage detection device 75 for detecting the voltage applied to the capacitor bank 7.
The discharge circuit 73 is comprised of a circuit of a resistor 731 and a switch 732 connected in series. The control apparatus 8 is provided with a charging completion detecting means 81 for judging if the capacitor bank 7 is in a charge completed state based on the voltage information output from the voltage detection device 75.
Next, the operation of the motor drive apparatus shown in
In the first example, when the control apparatus 8 detects an abnormality of the capacitor bank 7, it stops the functions of the capacitor bank 7.
In a first aspect of the first example, the control apparatus 8 controls the cutoff device 12 to cut off the input power to the converter 4 when it detects an abnormality of the capacitor bank 7.
In a second aspect of the first example, the control apparatus 8 controls the cutoff device 12 to cut off input power to the converter 4 in accordance with a fuse breakage signal detecting that the fuse 71 inside the capacitor bank 7 has broken.
In a third aspect of the first example, the control apparatus 8 controls the cutoff device 12 to cut off input power to the converter 4 when the temperature detected by a temperature detection device 74 inside the capacitor bank 7 has become a predetermined temperature.
In a fourth aspect of the first example, the control apparatus 8 controls the cutoff device 12 to cut off input power to the converter 4 when the door opening/closing detection device 10 detects the opening of the door 10.
In the second example, the control apparatus 8 causes the capacitor bank 7 to discharge when detecting an abnormality of the capacitor bank 7.
In a first aspect of the second example, the control apparatus 8 sends a discharge signal to the switch 732 in accordance with a fuse breakage signal detecting that the fuse 71 has been broken and thereby turns the switch 732, whereby the capacitors 72 start to discharge.
In a second aspect of the second example, the control apparatus 8 sends a discharge signal to the switch 732 in accordance with the temperature information output from the temperature detection device 74 when the temperature detected by the temperature detection device 74 becomes a predetermined temperature, whereby the switch 732 is turned on and thereby the capacitors 72 are discharged.
In the third example, the control apparatus 8 is provided with a charging completion detecting means for detecting if the capacitor bank is being charged based on voltage information output from a voltage detection device 75 inside the bank. The capacitor bank 7 controls the door lock device 11 to close and fasten the door 9 of the box housing the capacitor bank 7 when the charging completion detecting means finds that the capacitor bank 7 has finished being charged.
According to the present invention, when an abnormality of the capacitor bank is detected, the function of the capacitor bank is stopped, so the safety of the motor drive apparatus is secured.
Further, when an abnormality of the capacitor bank is detected, even if the capacitor bank stores a charge (energy), it is possible to avoid a person mistakenly being given an electric shock by touching the capacitor bank by discharging the capacitor bank or by closing a door of a capacitor bank.
While the invention has been described with reference to specific embodiments chosen for purpose of illustration, it should be apparent that numerous modifications could be made thereto by those skilled in the art without departing from the basic concept and scope of the invention.
Number | Date | Country | Kind |
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2006-321158 | Nov 2006 | JP | national |